Application of Temperature Stress to Root Zone of Spinach (2) Effect of the High Temperature Pre-Treatment on Quality
スポンサーリンク
概要
著者
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HIDAKA Kota
National Agricultural Research Center for Kyushu Okinawa Region
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Sago Yuki
Faculty Of Agriculture Kyushu University
関連論文
- A Method for in Situ Evaluation of Transpirational Water Loss from Crop Field by Applying Abscisic Acid to Plants
- Kinetics of Root Ion Absorption Affected by Environmental Factors and Transpiration : II. Environmental Effects and a Concentration-Dependent Model
- Kinetics of Root Ion Absorption Affected by Environmental Factors and Transpiration : I. Measurement System for Intact Roots
- Kinetics of Root Ion Absorption Affected by Environmental Factors and Transpiration : III. A Kinetic Model Integrated with Transpiration
- Application of Temperature Stress to Roots of Spinach I. Effect of the Low Temperature Stress on Quality
- Application of Temperature Stress to Root Zone of Spinach (2) Effect of the High Temperature Pre-Treatment on Quality
- Application of Temperature Stress to Root Zone of Spinach (3) Effective Method for Short Term Application of Low and High Temperature Stresses to Roots
- Application of Temperature Stress to Root Zone of Spinach : II. Effect of the High Temperature Pre-Treatment on Quality
- Application of Temperature Stress to Roots of Spinach : I. Effect of the Low Temperature Stress on Quality
- Time-course Pattern of Carrot Storage Root Growth in a Solid Substrate, Sub-irrigation Culture System
- Water and Carbon Balance in Developing Fruit of the Satsuma Mandarin (Citrus unshu Marc.)
- Application of a Kinetic Model for Analysis of Salt Absorption of Crop Roots under the Salinized Condition
- Quantitative Evaluation of the Direct Uptake of Organic Nitrogen by Tomato Roots Associated with Plant Growth and Water Uptake : Use of a Root Chamber with HPFM
- Application of a Kinetic Model for Analysis of Salt Absorption of Crop Roots under the Salinized Condition
- High Yields of Strawberry by Applying Vertically-Moving Beds on the Basis of Leaf Photosynthesis